Nanobiotechnology Laboratory, Department of Biotechnology, Sant Gadge Baba Amravati University, Amravati, MS, 444 602, India.
Academy of Biology and Biotechnology, Southern Federal University, Rostov-on-Don, 344090, Russia.
World J Microbiol Biotechnol. 2023 Oct 9;39(12):334. doi: 10.1007/s11274-023-03777-z.
Antimicrobial resistance (AMR) is a main public health issue and a challenge for the scientific community all over the globe. Hence, there is a burning need to build new bactericides that resist the AMR. The ZnONPs were produced by cell free extract of mint (Mentha piperita L.) leaves. Antibiotics that are ineffective against resistant bacteria like Escherichia coli and Staphylococcus aureus were treated. The antibiotics were first screened, and then antibacterial activity was checked by disk diffusion, and MIC of Mp-ZnONPs individually and using Kanamycin (KAN) were determined against these pathogens by broth microdilution method. The synergism between Mp-ZnONPs and KAN was confirmed by checkerboard assay. The MIC showed robust antibacterial activity against the tested pathogens. The combination of KAN and Mp-ZnONPs reduces the MIC of KAN as it efficiently inhibits E. coli's growth, and KAN significantly enhances the antibacterial activity of Mp-ZnONPs. Taken together, Mp-ZnONPs have strong antimicrobial activity, and KAN significantly improves it against the tested pathogens, which would offer an effective, novel, and benign therapeutic methodology to regulate the incidence. The combination of Mp-ZnONPs and KAN would lead to the development of novel bactericides, that could be used in the formulation of pharmaceutical products.
抗菌耐药性(AMR)是一个主要的公共卫生问题,也是全球科学界面临的挑战。因此,迫切需要开发新的抗菌药物来抵抗 AMR。ZnONPs 是通过薄荷(Mentha piperita L.)叶的无细胞提取物产生的。对大肠杆菌和金黄色葡萄球菌等对抗生素耐药的细菌进行了处理。首先对这些抗生素进行了筛选,然后通过圆盘扩散法检查抗菌活性,并通过肉汤微量稀释法测定 Mp-ZnONPs 单独使用和与卡那霉素(KAN)联合使用时对这些病原体的 MIC。通过棋盘试验证实了 Mp-ZnONPs 和 KAN 之间的协同作用。MIC 显示出对测试病原体的强大抗菌活性。KAN 和 Mp-ZnONPs 的联合使用降低了 KAN 的 MIC,因为它有效地抑制了大肠杆菌的生长,而 KAN 显著增强了 Mp-ZnONPs 的抗菌活性。总之,Mp-ZnONPs 具有很强的抗菌活性,KAN 显著提高了其对测试病原体的活性,这将为控制发病率提供一种有效、新颖和良性的治疗方法。Mp-ZnONPs 和 KAN 的联合使用将导致新型抗菌药物的开发,可用于药物产品的配方。